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Chill coma in the locust Locusta migratoria is initiated by spreading depolarization in the central nervous system

机译:蝗虫冷蝗是由中枢神经系统中的去极化扩散引起的

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摘要

The ability of chill-sensitive insects to function at low temperatures limits their geographic ranges. They have species-specific temperatures below which movements become uncoordinated prior to entering a reversible state of neuromuscular paralysis. In spite of decades of research, which in recent years has focused on muscle function, the role of neural mechanisms in determining chill coma is unknown. Spreading depolarization (SD) is a phenomenon that causes a shutdown of neural function in the integrating centres of the central nervous system. We investigated the role of SD in the process of entering chill coma in the locust, Locusta migratoria. We used thermolimit respirometry and electromyography in whole animals and extracellular and intracellular recording techniques in semi-intact preparations to characterize neural events during chilling. We show that chill-induced SD in the central nervous system is the mechanism underlying the critical thermal minimum for coordinated movement in locusts. This finding will be important for understanding how insects adapt and acclimate to changing environmental temperatures.
机译:对寒冷敏感的昆虫在低温下运行的能力限制了它​​们的地理范围。它们具有特定于物种的温度,在低于该温度之前,运动进入神经肌肉麻痹的可逆状态之前变得不协调。尽管数十年来的研究集中在肌肉功能上,但神经机制在确定寒冷昏迷中的作用尚不清楚。扩展去极化(SD)是一种导致中枢神经系统整合中心神经功能关闭的现象。我们调查了SD在蝗虫Locusta migratoria进入冷昏迷过程中的作用。我们在整个动物中使用了热限呼吸测定法和肌电图,在半完整制剂中使用了细胞外和细胞内记录技术来表征冷却过程中的神经事件。我们显示,中枢神经系统中由寒冷引起的SD是蝗虫协调运动的临界最低热值的机制。这一发现对于理解昆虫如何适应和适应不断变化的环境温度将具有重要意义。

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